Initial Laboratory Field Tests of the Rover-mounted GPR for China's First Mission to Mars

Bin Zhou, Yuxi Li, Dezhi Li, W. Lu, S. Shen, G. Fang, Yan Su, S. Dai
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引用次数: 3

Abstract

China's first Mars probe including an orbiter and a landing rover will be launched by 2020. A subsurface penetrating radar instrument has been selected to be a part of payload on the rover. The main scientific objective of the SPR is to characterize the thickness and sub-layer distribution of the Martian soil. The SPR consists of two channels. The low frequency channel of the SPR will provide a penetrating depth of 10 to 100 meters with a resolution of a few meters within the Martian soil. The higher frequency channel will penetrate to a depth of 3 to 10 meters with a resolution of a few centimeters within the Martian soil. The engineering model of the SPR was designed and manufactured. In order to illustrate and validate the equipment's performance, some laboratory field tests have been performed. The objectives of these tests were to evaluate the interaction between the radar and the rover and detect the internal objects buried in the pool filled with artificial volcanic ash.
为中国第一次火星任务,火星车上的探地雷达进行了初步的实验室现场测试
中国首个火星探测器将于2020年发射,包括一个轨道飞行器和一个登陆探测器。一个地下穿透雷达仪器已被选择作为漫游车上有效载荷的一部分。SPR的主要科学目标是表征火星土壤的厚度和亚层分布。战略货币储备由两个通道组成。SPR的低频通道将提供10到100米的穿透深度,在火星土壤中提供几米的分辨率。更高频率的频道将穿透火星土壤3到10米的深度,分辨率为几厘米。设计并制作了SPR的工程模型。为了说明和验证设备的性能,进行了一些实验室现场试验。这些测试的目的是评估雷达与月球车之间的相互作用,并探测埋在充满人工火山灰的水池中的内部物体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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